用于参数不确定/变化的线性系统的gpi重复控制

TecnoLogicas Pub Date : 2015-01-01 DOI:10.22430/22565337.214
John Cortés-Romero, Germán A. Ramos-Fuentes
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引用次数: 4

摘要

针对不确定线性系统的鲁棒重复控制问题,研究了不同的方法。本文提出使用重复控制和广义比例积分(GPI)控制在一个互补的方式。这些技术的调节和耦合已经在时间离散的环境中完成。重复控制是一种基于内模原理的控制技术,它能对周期信号进行完美的渐近跟踪和抑制。另一方面,GPI控制作为一种鲁棒的线性控制系统设计技术,能够抑制结构化的时间多项式加性扰动,特别是可以用时间多项式信号局部逼近的参数不确定性。GPI控制为适当的重复控制操作提供了合适的稳定性和鲁棒性条件。在频率响应框架下,利用植物样本对不同参数不确定性条件下的稳定性进行了分析。我们与其他对此类任务有效的互补控制方法进行了一些比较稳定性分析,增强了GPI情况下的鲁棒性和改进的性能。仿真实例验证了该方法的有效性。
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Control GPI-repetitivo para sistemas lineales con incertidumbre/variación en los parámetros
Robust repetitive control problems for uncertain linear systems have been considered by different approaches. This article proposes the use of Repetitive Control and Generalized Proportional Integral (GPI) Control in a complementary fashion. The conditioning and coupling of these techniques has been done in a time discrete context. Repetitive control is a control technique, based on the internal model principle, which yields perfect asymptotic tracking and rejection of periodic signals. On the other hand, GPI control is established as a robust linear control system design technique that is able to reject structured time polynomial additive perturbation, in particular, parameter uncertainty that can be locally approximated by time polynomial signal. GPI control provides a suitable stability and robustness conditions for the proper Repetitive Control operation. A stability analysis is presented under the frequency response framework using plant samples for different parameter uncertainty conditions. We carry out some comparative stability analysis with other complementary control approaches that has been effective for this kind of task, enhancing a better robustness and an improved performance for the GPI case. Illustrative simulation examples are presented which validate the proposed approach.
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发文量
30
审稿时长
28 weeks
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